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Silicon Carbide (SiC) Crucible

Silicon Carbide Crucible

Corrosion-resistant, thermally stable, and ultra-pure — silicon carbide crucibles improve efficiency and ensure your contamination-free, high-quality production.

  • 1-SiC Crucible
  • 2-Vessel
  • 3-Sagger
  • 4-Ceramic Pot
  • 1-SiC Crucible
  • 2-Vessel
  • 3-Sagger
  • 4-Ceramic Pot

Key Performance Features of Silicon Carbide Crucible

  • High Temperature Resistance(up to 1650°C)
  • Excellent Corrosion Resistance: Performs well in strong acid and alkali environments (hydrofluoric acid ≤ 20% concentration)
  • Ultra-High Purity(Metal contamination rate less than 0.01%)
  • Superior Thermal Conductivity(100–120 W/m·K)
  • Long Service Life(Over 300 thermal cycles under standard conditions)

Silicon Carbide Crucibles Overview by Manufacturing Process

Newthink offers extensive manufacturing expertise across a range of silicon carbide crucibles, engineered to meet the demands of various industrial applications.

Reaction-Bonded SiC Crucible
Reaction-Bonded SiC Crucible

Thermal shock resistant and economical; suits metal melting under 1380℃.

Pressureless Sintered SiC Pot
Pressureless Sintered SiC Pot

High density (≥3.2 g/cm³) and purity for 1650℃ in semiconductors and photovoltaics.

Recrystallized SiC Saggar
Recrystallized SiC Saggar

Ultra-pure (>99.9%) and stable at 1600℃ for labs and material synthesis.

Oxide-Bonded SiC Melting Segger
Oxide-Bonded SiC Melting Segger

Cost-effective, ≥85% purity, withstands 1400℃ in steelmaking sponge iron use.

Why Choose Newthink Silicon Carbide Crucible?

Choosing Newthink means choosing reliable quality and cost-effective solutions tailored to your actual application needs.

Quality Management System
14+ Years of Expertise

Over 14 years of professional experience in crucible design and manufacturing.

Trusted by Industry Leaders
Cost-Efficient Solutions

Competitive pricing and efficiency-focused options that help customers reduce costs.

Advanced technology and Precision Equipment
Versatile Forming Technologies

Capable of isostatic pressing, slip casting, and mechanical forming — perfect for complex shapes and large-size crucibles.

Strong Mass Production Capacity
Strict Quality Control

ISO-certified system with rigorous control over every production step to ensure consistent and dependable product quality.

Silicon Carbide Crucible Production Workshop

At Newthink, we conduct strict quality control from the raw materials stage, employing various advanced forming processes such as isostatic pressing, mechanical forming, and slip casting. Every product goes through a rigorous inspection process and quality checks before shipping, ensuring them keeping high performance and reliability.

The facility in Newthink also features a dedicated packaging area, where all products are securely packed in custom-designed crates filled with protective foam cushioning. This guarantees damage-free delivery, even under tough shipping conditions.

Silicon Carbide (SiC) Crucible Production Workshop
Popular Customized Sizes & Shapes of Silicon Carbide (SiC) Crucibles

Popular Customized Sizes & Shapes of Silicon Carbide Crucibles

Available Shapes

  • Cylindrical (Round) Crucibles
  • Rectangular (Square) Crucibles
  • Conical Crucibles
  • Custom-Shaped Crucibles

Available Sizes

  • Height: up to 1400 mm
  • Length & Width: up to 1200 mm
  • Diameter: up to 1200 mm

Meet Us at Exhibitions and Factory Visits

Meet Us at Exhibitions

Newthink actively participates in major industrial and advanced ceramics exhibitions worldwide throughout the year, such as TECNA in Italy, CERAMITEC in Germany and Vietnam, Highly-functional Ceramic Expo in Japan, meeting directly with our customers.

Factory Visits

Our doors are always open—you’re warmly invited to visit our factory, witnessing firsthand our dedication to quality. Through frequent interactions and strong relationships built at these global events and visits, we’ve earned deep trust from clients in over 40 countries and regions.

What Information Is Needed for a Custom Silicon Carbide Crucible Design?

To provide accurate and effective customization recommendations, we typically require the following details from our clients:

  • What is your application scenario? (e.g., metal melting, material synthesis, chemical processing)
  • What is the maximum operating temperature? (Please specify exact temperature conditions)
  • What are your heating and cooling curves? (Ramp rates and thermal cycling profiles)
  • Is your process corrosion-intensive? (Please indicate if strong acids like sulfuric, nitric, or hydrofluoric acid, or strong alkalis like sodium/potassium hydroxide are involved)
  • What problems are you currently experiencing? (Such as cracking, contamination, short service life, etc.)

Parameters for Different Types of Silicon Carbide Crucible

Silicon carbide crucibles are in various material grades and can be manufactured through different forming processes, each imparting unique properties tailored to specific application needs.

ItemUnitData
RBSiC(SiSiC)SSiCRSiCOSiC
Max service temperature1380165016001400
Densityg/cm33.023.08-3.162.65-2.752.75-2.85
Open porosity%0015-187-8
Thermal conductivity 1200℃W/m.k45100-12036.6/
Coefficient of thermal
expansion
K-lx10-64.54.14.69/

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  • Aluminum Oxide Crucible
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Why choose silicon carbide crucibles over other materials like alumina or graphite?

Compared with alumina and graphite, silicon carbide crucibles have better thermal conductivity, stronger resistance to thermal shock, and higher corrosion resistance. These features can reduce product contamination, lower the chance of cracking, and make them last longer – all while helping save energy. SiC can stay structurally stable up to 1650°C, and its durability is often better than both graphite and alumina.

What is the typical service life of a silicon carbide crucible?

Under standard conditions, the lifespan ranges from 60 to 300 cycles, but this varies based on factors like usage frequency, exposure to corrosive environments, thermal cycling, crucible design, and mechanical damage.

How can I extend the service life of my silicon carbide crucible?

– Control the speed of heating and cooling: We suggest a rate of no more than 5°C per minute.

– Clean out any leftover materials right after using it.

– Store it in a dry place to prevent it from absorbing moisture, which can make it weaker.

Is the cost of a silicon carbide crucible too high?

While the initial cost of a silicon carbide crucible may be higher than that of alumina, graphite, or clay crucibles, it has a longer service life, helps save energy, and works more efficiently. These benefits mean that over time, the overall cost is lower for long-term use.

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